首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >New insights into the mechanism of nickel insertion into carbon monoxide dehydrogenase: analysis of Rhodospirillum rubrum carbon monoxide dehydrogenase variants with substituted ligands to the [Fe3S4] portion of the active-site C-cluster
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New insights into the mechanism of nickel insertion into carbon monoxide dehydrogenase: analysis of Rhodospirillum rubrum carbon monoxide dehydrogenase variants with substituted ligands to the [Fe3S4] portion of the active-site C-cluster

机译:镍插入一氧化碳脱氢酶机理的新见解:分析在活性位点C-簇的[Fe3S4]部分具有取代配体的红景天螺旋藻一氧化碳脱氢酶变异体

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Carbon monoxide dehydrogenase (CODH) from Rhodospirillum rubrum catalyzes the oxidation of CO to CO2. A unique [NiFe4S4] cluster, known as the C-cluster, constitutes the active site of the enzyme. When grown in Ni-deficient medium R. rubrum accumulates a Ni-deficient apo form of CODH that is readily activated by Ni. It has been previously shown that activation of apo-CODH by Ni is a two-step process involving the rapid formation of an inactive apo-CODH center dot Ni complex prior to conversion to the active holo- CODH. We have generated CODH variants with substitutions in cysteine residues involved in the coordination of the [Fe3S4] portion of the C-cluster. Analysis of the variants suggests that the cysteine residues at positions 338, 451, and 481 are important for CO oxidation activity catalyzed by CODH but not for Ni binding to the C-cluster. C451S CODH is the only new variant that retains residual CO oxidation activity. Comparison of the kinetics and pH dependence of Ni activation of the apo forms of wild-type, C451S, and C531A CODH allowed us to develop a model for Ni insertion into the C-cluster of CODH in which Ni reversibly binds to the C-cluster and subsequently coordinates Cys531 in the rate-determining step.
机译:来自红红螺螺旋藻的一氧化碳脱氢酶(CODH)催化将CO氧化为CO2。独特的[NiFe4S4]簇称为C簇,构成了酶的活性位点。当在缺乏镍的培养基中生长时,红景天会积聚缺乏镍的脱辅基形式的CODH,该形式容易被镍激活。先前已经表明,Ni对载脂蛋白-CODH的活化是一个两步过程,涉及在转化成活性全-CODH之前快速形成无活性的载脂蛋白-CODH中心点Ni配合物。我们已经生成了CODH变体,在C簇的[Fe3S4]部分的协调中涉及半胱氨酸残基的取代。对变体的分析表明,位置338、451和481上的半胱氨酸残基对于CODH催化的CO氧化活性很重要,但对于Ni与C簇的结合并不重要。 C451S CODH是唯一保留残留CO氧化活性的新变体。通过比较野生型,C451S和C531A CODH载脂蛋白形式的Ni活化的动力学和pH依赖性,我们可以建立一个将Ni插入CODH C簇中的模型,其中Ni可逆地结合到C簇上然后在速率确定步骤中协调Cys531。

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